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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Multivariate relationships between microbial communities and environmental variables during co-composting of sewage sludge and agricultural waste in the presence of PVP-AgNPs
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Multivariate relationships between microbial communities and environmental variables during co-composting of sewage sludge and agricultural waste in the presence of PVP-AgNPs

机译:PVP-AGNPS在污水污泥和农业废弃物共堆肥期间微生物群落与环境变量的多变量关系

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摘要

This study evaluated the contributions of environmental variables to the variations in bacterial 16S rDNA, nitrifying and denitrifying genes abundances during composting in the presence of polyvinylpyrrolidone coated silver nanoparticles (PVP-AgNPs). Manual forward selection in redundancy analysis (RDA) indicated that the variation in 16S rDNA was significantly explained by NO3--N, while nitrifying genes were significantly related with pH, and denitrifying genes were driven by NO3--N and TN. Partial RDA further revealed that NO3--N solely explained 28.8% of the variation in 16S rDNA abundance, and pH accounted for 61.8% of the variation in nitrifying genes. NO3--N and TN accounted for 34.2% and 9.2% of denitrifying genes variation, respectively. The RDA triplots showed that different genes shared different relationships with environmental parameters. Based on these findings, a composting with high efficiency and quality may be conducted in the future work by adjusting the significant environmental variables.
机译:该研究评估了环境变量对细菌16s rDNA的变化的贡献,在聚乙烯吡咯烷酮涂覆的银纳米粒子(PVP-AGNPS)存在下堆肥期间堆肥期间的硝化和反硝化基因丰富。在冗余分析(RDA)中的手动前进选择表明,NO3 - N显着解释了16S rDNA的变化,而硝化基因与pH显着相关,并且通过NO 3 - N和TN驱动硝化基因。部分RDA进一步揭示了NO3 - N仅解释了16S rDNA丰度的28.8%的变化,并且pH占硝化基因变异的61.8%。 NO3 - N和TN分别占脱氮基因变异的34.2%和9.2%。 RDA三联人表明,不同的基因与环境参数共享不同的关系。基于这些发现,通过调整显着的环境变量,可以在未来的工作中进行高效率和质量的堆肥。

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